Air deflector assembly and air conditioner
By setting buckles and slots at both ends of the air guide plate assembly, the problem of the air guide plate coming off when tilted or dropped is solved, ensuring the normal operation of the air conditioner and improving the installation stability and reliability of the air guide plate.
Patent Information
- Application Number
- CN202423206002.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing air conditioning deflectors are prone to detaching due to excessive inertial deformation during tilting or falling, leading to poor airflow or damage to the fan blades.
An air guide plate assembly was designed. By setting the first and second air guide plate rotating shafts and the first and second bushings at both ends of the air guide plate, a snap-fit and slot structure is provided to ensure that when the air guide plate is tilted or falls, the rotating shaft at at least one end remains fixed on the bushing, preventing it from coming off.
It effectively prevents the air guide plate from falling out during tilting or dropping, ensuring the normal operation of the air conditioner, avoiding the air guide plate falling into the air duct and damaging the fan blades, and improving the installation stability and reliability of the air guide plate.
Smart Images

Figure CN223580182U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to air conditioner technical field, concretely relates to a kind of air deflector assembly and air conditioner. BACKGROUND
[0002] The current up and down air outlet cabinet machine inner machine upper air deflector mounting structure includes drive motor, air deflector, shaft sleeve and connecting rod four components, one air deflector is matched with motor shaft, the rest air deflectors are inserted into the shaft sleeve fixed on the air outlet frame, several air deflectors are connected with each other by two connecting rods, when the motor drives one air deflector to rotate, the rest several air deflectors can rotate together. This air deflector fixing mode can cause the air deflector to be out of shape during the prototype tilting and falling.
[0003] To solve this problem by lengthening the air deflector shaft length or increasing the air deflector fixing tape, but the air deflector shaft lengthening has certain limitations, when lengthened to a certain length, it will be very difficult to install the air deflector, because the air deflector is installed by bending the air deflector and inserting the shaft into the shaft sleeve, and the air deflector will be plastically deformed if too much force is applied. The fixing tape method also has certain problems, one is that the body is too high, and the production line is difficult to operate, and the other is that the adhesive tape has a problem of adhesive decline and adhesive transfer from the adhesive layer to the product in high temperature and high humidity conditions.
[0004] There are also many fixed structures designed to solve the air deflector out of shape in the industry, such as patent CN114322289A, which fixes the air deflector with the support frame by increasing two sets of latch assemblies to achieve the purpose of fixing the air deflector and facilitating disassembly. Patents CN213020240U and CN213020240U also designed similar structures to fix the air deflector and prevent it from coming out. Patent CN212619170U prevents the air deflector from coming out by increasing a reverse locking device on the air deflector shaft. Patent CN216346620U fixes the air deflector by increasing a structure that can slide along the air deflector shaft on the air deflector shaft. Patent CN218884111U fixes the air deflector by increasing a blind hole in the middle of the shaft, and the edge of the hole is cut open and grooved, so that part of the shaft can be changed into an elastic area. Patent CN219037034U fixes the air deflector by increasing a connecting shaft and a lock sleeve, connecting the air deflector shaft and the connecting shaft first, and then fixing the connecting shaft and the air deflector shaft together with the lock sleeve to prevent the air deflector from coming out.
[0005] The above-mentioned patents often have the problem of air deflector coming out in actual test, and are inconvenient to install, and the fixation is not reliable, and new parts are needed, which increases the cost.
[0006] Due to the existing air conditioner air deflector in the process of product storage, carrying out the problem of out of because of dumping, falling and other reasons, and then cause the air deflector out of the air deflector, or the air deflector falls into the air duct to cause the blade damage, abnormal sound, blade jamming and other technical problems, therefore the utility model research designs a kind of air deflector assembly and air conditioner. Invention content
[0007] Therefore, the technical problem to be solved by the utility model lies in overcoming the defects of the air deflector in the prior art, such as excessive deformation of the air deflector due to inertia during dumping and falling, and out of the air deflector, so as to provide an air deflector assembly and an air conditioner.
[0008] In order to solve the above problems, the utility model provides an air deflector assembly, which comprises:
[0009] The air deflector, the first shaft sleeve and the second shaft sleeve are connected at one end in the axial direction of the air deflector, and the other end in the axial direction of the air deflector is connected with the second air deflector shaft, the first air deflector shaft can be clamped in the first shaft sleeve, and the first air deflector shaft has a first mounting position, at which the first air deflector shaft can be clamped into or out of the first shaft sleeve, the second air deflector shaft can be clamped in the second shaft sleeve, the second air deflector shaft has a second mounting position, at which the second air deflector shaft can be clamped into or out of the second shaft sleeve, and the first mounting position and the second mounting position are not opposite in the axial direction of the air deflector.
[0010] In some embodiments,
[0011] The air deflector can be elastically bent: when the air deflector needs to be installed, the first air deflector shaft is rotated to the first mounting position and connected with the first shaft sleeve, and then the second air deflector shaft is rotated to the second mounting position and the air deflector is bent to connect the second air deflector shaft with the second shaft sleeve;
[0012] When the air deflector needs to be disassembled, the first air deflector shaft is rotated to the first mounting position, and the air deflector is bent to disengage the first air deflector shaft from the first shaft sleeve, and then the second air deflector shaft is rotated to the second mounting position and disengaged from the second shaft sleeve.
[0013] In some embodiments,
[0014] The first buckle is protruded outwardly on the outer circumferential wall of the first pivot, and the first clamping groove is recessed on the inner circumferential wall of the first sleeve. When the first buckle and the first clamping groove are opposite along the axial direction of the first pivot, the first buckle can be clamped into or out of the first clamping groove. When the first buckle is clamped into the first clamping groove, the first pivot is axially limited by the first sleeve.
[0015] The second buckle is protruded outwardly on the outer circumferential wall of the second pivot, and the second clamping groove is recessed on the inner circumferential wall of the second sleeve. When the second buckle and the second clamping groove are opposite along the axial direction of the second pivot, the second buckle can be clamped into or out of the second clamping groove. When the second buckle is clamped into the second clamping groove, the second pivot is axially limited by the second sleeve.
[0016] The air deflector, the first pivot and the second pivot are integrally rotated. In the same state, the first buckle and the second buckle are not opposite in the axial direction, and / or the first clamping groove and the second clamping groove are not opposite in the axial direction.
[0017] In some embodiments,
[0018] In the axial projection plane of the air deflector, the first buckle and the second buckle are arranged at an interval of 90° in the circumferential direction, and / or in the axial projection plane of the air deflector, the first clamping groove and the second clamping groove are arranged at an interval of 90° in the circumferential direction.
[0019] In some embodiments,
[0020] The first sleeve has a first end plate, the first end plate has a first shaft hole penetrating through the axial two end faces, the inner wall of the first shaft hole is recessed outwardly in the radial direction to form the first clamping groove, the first pivot can be inserted into the first shaft hole from the axial one end face of the first end plate in the axial direction, so that the first buckle is inserted into the first clamping groove from the axial one end face of the first end plate in the axial direction and moves to the axial other end face of the first end plate, and further by rotating the first pivot, the first buckle is clamped at the axial other end face of the first end plate.
[0021] The second shaft sleeve has a second end plate with a second shaft hole penetrating through axial two end faces, the inner wall of the second shaft hole is recessed to form the second clamping slot towards the radial outside, the second air baffle rotating shaft can be inserted into the second shaft hole from the axial one end face of the second end plate, so that the second clamping buckle is inserted into the second clamping slot from the axial one end face of the second end plate and moves to the axial other end face of the second end plate, and further by rotating the second air baffle rotating shaft, the second clamping buckle is clamped on the axial other end face of the second end plate.
[0022] In some embodiments,
[0023] The first clamping buckle is a plurality of, a plurality of the first clamping buckle is distributed on the outer circumferential wall of the first air baffle rotating shaft along the circumferential direction, the first clamping slot is also a plurality of, a plurality of the first clamping slot is distributed on the inner circumferential wall of the first shaft hole along the circumferential direction, the first clamping buckle and the first clamping slot can be one-to-one corresponding clamping, when the first clamping buckle is not opposite to the first clamping slot, the first air baffle rotating shaft cannot be installed on the first shaft sleeve or cannot be pulled out of the first shaft sleeve;
[0024] The second clamping buckle is a plurality of, a plurality of the second clamping buckle is distributed on the outer circumferential wall of the second air baffle rotating shaft along the circumferential direction, the second clamping slot is also a plurality of, a plurality of the second clamping slot is distributed on the inner circumferential wall of the second shaft hole along the circumferential direction, the second clamping buckle and the second clamping slot can be one-to-one corresponding clamping, when the second clamping buckle is not opposite to the second clamping slot, the second air baffle rotating shaft cannot be installed on the second shaft sleeve or cannot be pulled out of the second shaft sleeve;
[0025] There is at least one first clamping buckle and at least one second clamping buckle not opposite in the axial direction of the air baffle, and / or there is at least one first clamping slot and at least one second clamping slot not opposite in the axial direction of the air baffle.
[0026] In some embodiments,
[0027] There is no corresponding relationship between a plurality of the first clamping buckle and a plurality of the second clamping buckle in the axial direction of the air baffle, and / or there is no corresponding relationship between a plurality of the first clamping slot and a plurality of the second clamping slot in the axial direction of the air baffle.
[0028] In some embodiments,
[0029] The first clamping buckle is two arranged on the first air baffle rotating shaft, and the two first clamping buckles are arranged at an interval of 180° in the circumferential direction; the second clamping buckle is two arranged on the second air baffle rotating shaft, and the two second clamping buckles are arranged at an interval of 180° in the circumferential direction.
[0030] In some embodiments,
[0031] The air outlet frame has oppositely arranged first and second mounting plates, and an air outlet is formed between the first and second mounting plates, the air deflector is located in the air outlet, the first mounting plate is provided with a first shaft sleeve mounting hole, the first shaft sleeve is arranged in the first shaft sleeve mounting hole, the second mounting plate is provided with a second shaft sleeve mounting hole, and the second shaft sleeve is arranged in the second shaft sleeve mounting hole.
[0032] The first shaft sleeve further comprises a first shaft sleeve buckle, which is inserted into the first shaft sleeve mounting hole from the axial one side end face of the first mounting plate and clamped on the axial other side end face of the first mounting plate to axially limit the first shaft sleeve; the second shaft sleeve further comprises a second shaft sleeve buckle, which is inserted into the second shaft sleeve mounting hole from the axial one side end face of the second mounting plate and clamped on the axial other side end face of the second mounting plate to axially limit the second shaft sleeve.
[0033] In some embodiments,
[0034] The first shaft sleeve further comprises a first limiting rib; the inner wall of the first shaft sleeve mounting hole is further provided with a first shaft sleeve mounting hole groove, and the first limiting rib can be clamped with the first shaft sleeve mounting hole groove to limit the first shaft sleeve in the circumferential direction.
[0035] The second shaft sleeve further comprises a second limiting rib; the inner wall of the second shaft sleeve mounting hole is further provided with a second shaft sleeve mounting hole groove, and the second limiting rib can be clamped with the second shaft sleeve mounting hole groove to limit the second shaft sleeve in the circumferential direction.
[0036] In some embodiments,
[0037] The first shaft sleeve buckle is a plurality of first shaft sleeve buckles, which are arranged at intervals in the circumferential direction of the first shaft sleeve; the first limiting rib is a plurality of first limiting ribs, which are arranged at intervals in the circumferential direction of the first shaft sleeve; and the first shaft sleeve buckle and the first limiting rib are also arranged at intervals in the circumferential direction of the first shaft sleeve.
[0038] The second shaft sleeve buckle is a plurality of second shaft sleeve buckles, which are arranged at intervals in the circumferential direction of the second shaft sleeve; the second limiting rib is a plurality of second limiting ribs, which are arranged at intervals in the circumferential direction of the second shaft sleeve; and the second shaft sleeve buckle and the second limiting rib are also arranged at intervals in the circumferential direction of the second shaft sleeve.
[0039] In some embodiments,
[0040] One said air deflector, one said first air deflector pivot, one said first shaft sleeve, one said second air deflector pivot and one said second shaft sleeve constitute a group of air deflector unit, the air deflector unit is multiple groups, multiple groups of air deflector unit is connected as a whole;The air deflector assembly further includes motor and air deflector connecting rod, the air deflector connecting rod connects the air deflector in multiple groups of air deflector unit, the motor drives one first air deflector pivot rotation, simultaneously through the air deflector connecting rod drives multiple air deflector integrated rotation.
[0041] The utility model discloses still provide a kind of air conditioner, it includes the air deflector assembly of preceding.
[0042] The air deflector assembly and air conditioner provided by the utility model have the following beneficial effects:
[0043] 1. The utility model discloses a first air deflector pivot and first shaft sleeve are connected to the axial one end of air deflector, and a second air deflector pivot and second shaft sleeve are connected to the axial other end of air deflector, and first air deflector pivot has first installation position connected with first shaft sleeve or out of, second air deflector pivot has second installation position connected with second shaft sleeve or out of, and the first installation position is not opposite with the second installation position in the axial direction of the air deflector, so that especially in the process of dumping, falling etc.
[0044] 2. The utility model discloses still through being provided with first and second buckles on the outer circumferential wall of first and second air deflector pivot respectively, can be correspondingly with first and second shaft sleeve respectively provided with first and second clamping groove respectively and be clamped together, to form first installation position and second installation position respectively, the axial position of first air deflector pivot is formed by first buckle and first clamping groove, the axial position of second air deflector pivot is formed by second buckle and second clamping groove, since first and second shaft sleeve are fixed immovably, first and second clamping groove respectively provided on first and second shaft sleeve are not opposite in the axial direction, and first and second buckles respectively provided on first and second air deflector pivot are not opposite in the axial direction, so that the clamping installation position and out of position of first buckle and first clamping groove are not opposite with the clamping position and out of position of second buckle and second clamping groove, to guarantee that the clamping groove of one end buckle is out of, the clamping groove of other end buckle is not opposite still and keeps the state of clamping, effectively solve the problem of air deflector out of in the process of dumping, falling etc.
[0045] 3.The utility model further further through first axle sleeve's first axle sleeve buckle can make first axle sleeve pass through elastic first axle sleeve buckle and set to first installation panel, through second axle sleeve's second axle sleeve buckle can make second axle sleeve pass through elastic second axle sleeve buckle and set to second installation panel, form to first and second axle sleeve's axial limit;And through first axle sleeve's first limit rib strip that sets up, can with first axle sleeve mounting hole's first axle sleeve mounting hole recess groove cooperation joint, through second axle sleeve's second limit rib strip that sets up, can with second axle sleeve mounting hole's second axle sleeve mounting hole recess groove cooperation joint, to form axial limit to first and second axle sleeve respectively, prevent its rotation, guarantee first and second axle sleeve effectively be fixed to the both sides installation panel of air outlet frame, guarantee the stability of air baffle structure installation. BRIEF DESCRIPTION OF DRAWINGS
[0046] Figure 1 It is the overall assembly structure diagram (one side view) of the air baffle assembly of the utility model;
[0047] Figure 2 It is the overall assembly structure diagram (the other side view) of the air baffle assembly of the utility model;
[0048] Figure 3 It is the axle sleeve installation structure diagram in the air baffle assembly of the utility model;
[0049] Figure 4 It is Figure 3 The first axle sleeve part of in the local enlarged view;
[0050] Figure 5 It is Figure 3 The second axle sleeve part of in the local enlarged view;
[0051] Figure 6 It is the assembly structure diagram of motor, axle sleeve, air baffle and air baffle connecting rod in the air baffle assembly of the utility model;
[0052] Figure 7 It is Figure 6 The structure enlarged view of the cooperation of first rotation axis buckle and first axle sleeve in the left side in;
[0053] Figure 8 It is Figure 6 The structure enlarged view of the cooperation of second rotation axis buckle and second axle sleeve in the right side in;
[0054] Figure 9 It is the overall structure diagram when the air baffle of the utility model closes air outlet;
[0055] Figure 10 It is Figure 9 The structure enlarged view of the cooperation of first rotation axis buckle and first axle sleeve in the left side in;
[0056] Figure 11 is Figure 9 is an enlarged view of the structure that the second rotating shaft buckle on the right side of the middle part cooperates with the second shaft sleeve;
[0057] Figure 12 is the overall structure diagram of the air deflector of the utility model when the air outlet (90°) is opened;
[0058] Figure 13 is Figure 12 is an enlarged view of the structure that the first rotating shaft buckle on the left side of the middle part cooperates with the first shaft sleeve;
[0059] Figure 14 is Figure 11 is an enlarged view of the structure that the second rotating shaft buckle on the right side of the middle part cooperates with the second shaft sleeve.
[0060] The reference signs are shown as follows:
[0061] 1, air deflector; 1a, active air deflector; 1b, passive air deflector; 2, first shaft sleeve; 3, second shaft sleeve; 4, first air deflector rotating shaft; 5, second air deflector rotating shaft; 6, first buckle; 7, first clamping groove; 8, second buckle; 9, second clamping groove; 10, first end plate; 11, first shaft hole; 12, second end plate; 13, second shaft hole; 14, air outlet frame; 15, first mounting plate; 16, second mounting plate; 17, first shaft sleeve mounting hole; 18, second shaft sleeve mounting hole; 19, air outlet; 20, first shaft sleeve buckle; 21, first limiting rib; 22, first shaft sleeve mounting hole groove; 23, second shaft sleeve buckle; 24, second limiting rib; 25, second shaft sleeve mounting hole groove; 26, motor; 27, air deflector connecting rod; 28, elastic buckle; 100, first mounting position; 200, second mounting position. DETAILED DESCRIPTION
[0062] The technical solutions in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. The description of the at least one exemplary embodiment is actually only illustrative, but not as any limitation on the utility model and its application or use. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0063] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, devices, components and / or combinations thereof, but do not preclude the presence or addition of one or more other features, steps, operations, devices, components and / or combinations thereof.
[0064] The relative arrangement of parts and steps, numerical expressions, and numerical values set forth in the examples are not intended to limit the scope of the present application unless otherwise specifically stated. It is to be understood that the drawings are not necessarily to scale of the various parts shown in the drawings. Techniques, methods, and apparatus known to those of ordinary skill are not discussed in detail because they would be understood that such techniques, methods, and apparatus are considered part of the art. In all examples shown and discussed herein, any specific values are to be interpreted as merely illustrative and not limiting. Thus, other examples of example embodiments can have different values. It is noted that like numbers and letters on the figures identify like parts throughout the several views, and thus, once an item is defined in one figure, it is not necessary to discuss it further in connection with other figures where it is understood that the item will be similarly constructed and function in the same manner.
[0065] In the description of the present application, it is to be understood that the orientation words such as "front, back, up, down, left, right", "horizontal, vertical, perpendicular, horizontal" and "top, bottom" and the like indicated orientation or position relationship is usually based on the orientation or position relationship shown in the drawings, only for the convenience of describing the present application and simplifying the description, without making the opposite statement, these orientation words do not indicate and imply that the device or element referred to must have a particular orientation or be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the scope of protection of the present application; the orientation words "inner, outer" refer to the inner and outer relative to the contour of each component.
[0066] For purposes of the description hereinafter, spatial relative terms, such as "above", "below", "upper", "lower", and the like, can be used to describe the relative position of one element or feature to another element or feature as illustrated in the figures. It will be understood that the spatial relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. For example, if the device in the figures is turned over, elements described as "above" or "up" other elements or features would then be oriented "below" or "down" the other elements or features. Thus, the exemplary term "above" can encompass both an orientation of above and below. The device can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0067] In addition, it should be noted that the use of "first", "second", and the like words of distinction do not connote any meaning of importance, but are used only to distinguish one element from another, and are used in the context of this application only to more readily identify one element from another. Thus, the use of "first", "second", and the like words of distinction does not connote any meaning of importance, and should not be interpreted as limiting the scope of the present application.
[0068] As shown in the drawings, Figures 1-14 The utility model provides a deflector assembly, which comprises:
[0069] The deflector 1, the first shaft sleeve 2 and the second shaft sleeve 3, the axial one end of the deflector 1 is connected with the first deflector rotating shaft 4, the axial other end of the deflector 1 is connected with the second deflector rotating shaft 5, the first deflector rotating shaft 4 can be clamped in the first shaft sleeve 2, and the first deflector rotating shaft 4 has a first mounting position 100, the first deflector rotating shaft 4 can be clamped into or separated from the first shaft sleeve 2 at the first mounting position 100, the second deflector rotating shaft 5 can be clamped in the second shaft sleeve 3, the second deflector rotating shaft 5 has a second mounting position 200, the second deflector rotating shaft 5 can be clamped into or separated from the second shaft sleeve 3 at the second mounting position 200, and the first mounting position 100 and the second mounting position 200 are not opposite in the axial direction of the deflector 1.
[0070] The utility model discloses a first air baffle pivot and first shaft sleeve are connected to the axial one end of air baffle, and the second air baffle pivot and second shaft sleeve are connected to the axial other end of air baffle, and the first air baffle pivot has the first installation position of being connected or being taken off with first shaft sleeve, and the second air baffle pivot has the second installation position of being connected or being taken off with second shaft sleeve, and the first installation position and the second installation position are not opposite in the axial direction of air baffle, thereby especially in the process of dumping, falling of air baffle, if the first air baffle pivot of axial one end is taken off, the second air baffle pivot of circumferential other end is still fixed to second shaft sleeve, thereby effectively prevent the condition of air baffle complete taking off, effectively solve the problem of air baffle taking off caused by the problem of air baffle deformation too big because of inertia in the process of dumping, falling.
[0071] In some embodiments,
[0072] The air baffle 1 can be elastically bent: when it is needed to install the air baffle, the first air baffle pivot 4 is rotated to the first installation position 100 and connected with the first shaft sleeve 2, and then the second air baffle pivot 5 is rotated to the second installation position 200 and the air baffle 1 is bent to connect the second air baffle pivot 5 with the second shaft sleeve 3;
[0073] When it is needed to disassemble the air baffle 1, the first air baffle pivot 4 is rotated to the first installation position 100, and the air baffle 1 is bent to take off the first air baffle pivot 4 from the first shaft sleeve 2, and then the second air baffle pivot 5 is rotated to the second installation position 200 and taken off from the second shaft sleeve 3.
[0074] This is the preferred structure form of the air baffle of the utility model, through the air baffle structure of elastic structure, can be first inserted the first air baffle pivot of one end of air baffle and first shaft sleeve when installing, then bend air baffle to complete the insertion cooperation of the second air baffle pivot of other end and second shaft sleeve, finally complete the effective connection of both ends of air baffle, when needing to disassemble air baffle, first make the first air baffle pivot move to the first installation position, thereby can take off the first air baffle pivot from the first shaft sleeve, take out the first air baffle pivot through the form of bending air baffle, then rotate the second air baffle pivot to the second installation position and take out, effectively avoid the situation that one end of air baffle is taken off from the first shaft sleeve and other end is also taken off from the second shaft sleeve, prevent the situation of accidental falling of air baffle caused by misdisassembly or falling, vibration, etc., guarantee the stability of air baffle installation.
[0075] In some embodiments,
[0076] The outer peripheral wall of the first air deflector rotating shaft 4 is provided with a first buckle 6 protruding to the radial outer side, and the inner peripheral wall of the first shaft sleeve 2 is provided with a first clamping groove 7 recessed to the radial outer side, when the first buckle 6 and the first clamping groove 7 are opposite along the axial direction of the first air deflector rotating shaft 4, the first buckle 6 can be clamped into or out of the first clamping groove 7, and when the first buckle 6 is clamped into the first clamping groove 7, the first air deflector rotating shaft 4 can be axially limited by the first shaft sleeve 2.
[0077] The outer peripheral wall of the second air deflector rotating shaft 5 is provided with a second buckle 8 protruding to the radial outer side, and the inner peripheral wall of the second shaft sleeve 3 is provided with a second clamping groove 9 recessed to the radial outer side, when the second buckle 8 and the second clamping groove 9 are opposite along the axial direction of the second air deflector rotating shaft 5, the second buckle 8 can be clamped into or out of the second clamping groove 9, and when the second buckle 8 is clamped into the second clamping groove 9, the second air deflector rotating shaft 5 can be axially limited by the second shaft sleeve 3.
[0078] The air deflector 1, the first air deflector rotating shaft 4 and the second air deflector rotating shaft 5 rotate integrally, and in the same state, the first buckle 6 and the second buckle 8 are not opposite in the axial direction, and / or the first clamping groove 7 and the second clamping groove 9 are not opposite in the axial direction.
[0079] The first and second buckles arranged on the outer peripheral walls of the first and second air deflector rotating shafts can be correspondingly clamped with the first and second clamping grooves arranged on the first and second shaft sleeves respectively, so that the first and second installation positions are formed respectively, the axial limitation of the first air deflector rotating shaft is formed by the first buckle and the first clamping groove, and the axial limitation of the second air deflector rotating shaft is formed by the second buckle and the second clamping groove, since the first and second shaft sleeves are fixed, the first and second clamping grooves arranged on the first and second shaft sleeves are not opposite in the axial direction, and the first and second buckles arranged on the first and second air deflector rotating shafts are not opposite in the axial direction, so that the clamping installation position and the disengagement position of the first buckle and the first clamping groove are not opposite to the clamping position and the disengagement position of the second buckle and the second clamping groove, and the state that the buckle at one end is clamped with the clamping groove is maintained after the buckle at the other end is disengaged from the clamping groove, so that the problem of air deflector disengagement caused by the process of dumping and falling of the air deflector is effectively solved.
[0080] The utility model discloses a set of air deflector fixing structure, the scheme is through setting up the buckle that cooperates each other on the shaft sleeve and air deflector rotating shaft, and the limiting rib is prevented the problem that air deflector is easy to disengage, can prevent the process that air deflector falls down, falls, because the problem of inertia leads to air deflector deformation too big, and then causes the problem of air deflector disengagement.
[0081] In some embodiments,
[0082] In the axial projection plane of the air deflector 1, the first buckle 6 and the second buckle 8 are arranged at a circumferential interval of 90°; and / or, in the axial projection plane of the air deflector 1, the first clamping groove 7 and the second clamping groove 9 are arranged at a circumferential interval of 90°.
[0083] This is the preferred structure of the two buckles at the axial ends of the air deflector and the preferred structure of the clamping grooves of the two shaft sleeves, which can ensure that the installation positions of the first air deflector rotating shaft and the second air deflector rotating shaft are different in the circumferential direction (not opposite in the axial direction) by arranging the two buckles at a circumferential interval of 90°, thereby avoiding the situation that when one end is accidentally removed, the other end also comes off, and avoiding the air deflector from coming off the air outlet frame due to an accident.
[0084] The utility model discloses a 90 ° included angle is formed by the buckle on the air deflector rotating shaft and the recess on the shaft sleeve, so that when the air deflector rotating shaft is inserted into the shaft sleeve, at least one side of the air deflector rotating shaft is clamped on the shaft sleeve, whether the air deflector is closed or opened or in the process of rotating. This scheme can ensure that at least one side of the air deflector rotating shaft is fixed on the shaft sleeve during the process of closing to the maximum opening angle of the air deflector, thereby solving the risk of air deflector deformation caused by the whole machine dumping or falling in after-sales, and the air deflector rotating shaft slipping out of the shaft sleeve.
[0085] Referring to Figures 9-11 This is the state when the air deflector is closed, and the buckle of the left air deflector rotating shaft corresponds to the recess inside the shaft sleeve Figure 10 , and in this state, the left air deflector rotating shaft can be installed or removed by slightly bending the air deflector; at this time, the buckle of the right air deflector rotating shaft and the recess inside the right shaft sleeve form a 90 ° included angle Figure 11 , and the right air deflector rotating shaft cannot be installed or removed when the air deflector is closed.
[0086] Referring to Figures 12-14 , in the state when the air deflector is opened by 90 °, the buckle of the right air deflector rotating shaft corresponds to the recess inside the shaft sleeve Figure 14 , and in this state, the right air deflector rotating shaft can be installed or removed by slightly bending the air deflector; at this time, the buckle of the left air deflector rotating shaft and the recess inside the left shaft sleeve form a 90 ° included angle Figure 13), the left side of the air deflector rotation shaft cannot be installed or removed when the air deflector is opened by 90°.
[0087] With reference to Figures 9-14 , after the air deflector is installed, during the process of closing to opening, the air deflector rotation shaft on one side is clamped on the shaft sleeve, which prevents the air deflector from being taken out and unable to work normally due to falling or dropping during storage and transportation, or the air deflector from being taken out and falling into the air duct and damaging the fan blade; and the air deflector can be quickly installed or removed when the air deflector is closed and opened to a state of 90°, which is convenient for production installation and after-sales maintenance.
[0088] In some embodiments,
[0089] The first shaft sleeve 2 has a first end plate 10, the first end plate 10 has a first shaft hole 11 penetrating through the axial two end faces, the inner wall of the first shaft hole 11 is recessed towards the radial outer side to form the first clamping groove 7, the first air deflector rotation shaft 4 can be inserted into the first shaft hole 11 from the axial one end face of the first end plate 10 in the axial direction, so that the first clamping buckle 6 is inserted into the first clamping groove 7 from the axial one end face of the first end plate 10 in the axial direction and moves to the axial other end face of the first end plate 10, and further by rotating the first air deflector rotation shaft 4, the first clamping buckle 6 is clamped on the axial other end face of the first end plate 10.
[0090] The second shaft sleeve 3 has a second end plate 12, the second end plate 12 has a second shaft hole 13 penetrating through the axial two end faces, the inner wall of the second shaft hole 13 is recessed towards the radial outer side to form the second clamping groove 9, the second air deflector rotation shaft 5 can be inserted into the second shaft hole 13 from the axial one end face of the second end plate 12 in the axial direction, so that the second clamping buckle 8 is inserted into the second clamping groove 9 from the axial one end face of the second end plate 12 in the axial direction and moves to the axial other end face of the second end plate 12, and further by rotating the second air deflector rotation shaft 5, the second clamping buckle 8 is clamped on the axial other end face of the second end plate 12.
[0091] This is the preferred structure form of the first and second shaft sleeves of the utility model, the first and second air deflector rotation shafts can be inserted through the first and second shaft holes, the first and second clamping buckles can be inserted to the axial other end face of the first and second end plates through the first and second clamping grooves respectively arranged on the first and second shaft holes, the first and second clamping buckles are clamped on the axial end face of the end plate of the first and second shaft sleeves respectively by rotating the first and second air deflector rotation shafts respectively, the axial position of the air deflector rotation shafts on the two ends of the air deflector is limited and cannot be taken out, and the normal work is ensured.
[0092] With reference to Figures 1-2 and Figures 6-8The driven air deflector 1b and the active air deflector 1a are inserted into the shaft sleeve from the non-motor fixed side, the two air deflector connecting rods are matched with the elastic buckles 28 on the left and right sides of the air deflector, and the whole air deflector assembly is installed.
[0093] Referring to Figures 7-8 This is a schematic diagram of the air deflector structure, wherein a set of buckles are arranged on the shafts on the left and right sides of the air deflector, and the buckles on the left and right shafts are in a state of perpendicular to each other in the axial normal plane projection
[0094] In some embodiments,
[0095] The first buckles 6 are a plurality of first buckles 6, and the plurality of first buckles 6 are spaced apart along the circumference of the outer wall of the first air deflector shaft 4. The first buckles 6 and the first buckles 7 can be one-to-one corresponding, and when the first buckles 6 are not opposite to the first buckles 7, the first air deflector shaft 4 cannot be installed on the first shaft sleeve 2 or cannot be removed from the first shaft sleeve 2.
[0096] The second buckles 8 are a plurality of second buckles 8, and the plurality of second buckles 8 are spaced apart along the circumference of the outer wall of the second air deflector shaft 5. The second buckles 8 and the second buckles 9 can be one-to-one corresponding, and when the second buckles 8 are not opposite to the second buckles 9, the second air deflector shaft 5 cannot be installed on the second shaft sleeve 3 or cannot be removed from the second shaft sleeve 3.
[0097] There are at least one first buckle 6 and at least one second buckle 8 that are not opposite in the axial direction of the air deflector 1, and / or there are at least one first buckle 7 and at least one second buckle 9 that are not opposite in the axial direction of the air deflector 1.
[0098] The utility model discloses preferably first buckle is the multiple that is arranged on the first air baffle rotating shaft circumferentially interval, can complete installation and joint with the multiple first clamping groove that is arranged on the first shaft sleeve circumferentially interval, improve the axial fixed stability of first air baffle rotating shaft, preferably second buckle is the multiple that is arranged on the second air baffle rotating shaft circumferentially interval, can complete installation and joint with the multiple second clamping groove that is arranged on the second shaft sleeve circumferentially interval, improve the axial fixed stability of second air baffle rotating shaft, and at least one first buckle and at least one second buckle are not opposite in the axial direction and / or at least one first clamping groove and at least one second clamping groove are not opposite in the axial direction, can effectively guarantee the joint installation position and the position of the second buckle and the second clamping groove of the first buckle and the first clamping groove and the second buckle and the second clamping groove are not opposite, thereby guaranteeing the buckle of one end from the clamping groove, the buckle and the clamping groove of the other end are not opposite still keep the state of joint, effectively solve the problem of the air baffle of air conditioner in the process of dumping, falling, causes the air baffle to come off.
[0099] In some embodiments,
[0100] The plurality of first buckles 6 and the plurality of second buckles 8 are not opposite in the axial direction of the air baffle 1, and / or the plurality of first clamping grooves 7 and the plurality of second clamping grooves 9 are not opposite in the axial direction of the air baffle 1.
[0101] The utility model further preferably the plurality of first buckles and the plurality of second buckles are not opposite in the axial direction of the air baffle, and / or the plurality of first clamping grooves and the plurality of second clamping grooves are not opposite in the axial direction of the air baffle 1, which can further ensure that the buckle at one end is still in a joint state with the clamping groove at the other end after being removed from the clamping groove, effectively solving the problem of the air baffle coming off caused by dumping or falling of the air baffle of an air conditioner.
[0102] In some embodiments,
[0103] The first buckle 6 is arranged on the first air baffle rotating shaft 4, and the two first buckles 6 are arranged at an interval of 180° in the circumferential direction. The second buckle 8 is arranged on the second air baffle rotating shaft 5, and the two second buckles 8 are arranged at an interval of 180° in the circumferential direction.
[0104] The utility model discloses preferably first buckle is two and along circumferential direction interval 180 ° setting, preferably second buckle is two and along circumferential direction interval 180 ° setting, can guarantee the axial location stability of the air baffle rotating shaft of both sides while reducing the processing of buckle clamping groove, reduce the processing cost.
[0105] In some embodiments,
[0106] The air outlet frame 14 further comprises a first mounting plate 15 and a second mounting plate 16 arranged oppositely, and an air outlet 19 is formed between the first mounting plate 15 and the second mounting plate 16, wherein the air baffle 1 is located in the air outlet 19, the first mounting plate 15 is provided with a first shaft sleeve mounting hole 17, the first shaft sleeve 2 is arranged in the first shaft sleeve mounting hole 17, and the second mounting plate 16 is provided with a second shaft sleeve mounting hole 18, and the second shaft sleeve 3 is arranged in the second shaft sleeve mounting hole 18.
[0107] The first shaft sleeve 2 further comprises a first shaft sleeve buckle 20 which is inserted into the first shaft sleeve mounting hole 17 from an axial one-side end surface of the first mounting plate 15 and is clamped on an axial other-side end surface of the first mounting plate 15, so as to axially limit the first shaft sleeve 2, and the second shaft sleeve 3 further comprises a second shaft sleeve buckle 23 which is inserted into the second shaft sleeve mounting hole 18 from an axial one-side end surface of the second mounting plate 16 and is clamped on an axial other-side end surface of the second mounting plate 16, so as to axially limit the second shaft sleeve 3.
[0108] The first shaft sleeve mounting hole on the first mounting plate of the air outlet frame can accommodate the insertion of the first shaft sleeve, and the first shaft sleeve buckle on the first shaft sleeve can enable the first shaft sleeve to be clamped onto the first mounting plate through the elastic first shaft sleeve buckle, the second shaft sleeve mounting hole on the second mounting plate of the air outlet frame can accommodate the insertion of the second shaft sleeve, and the second shaft sleeve buckle on the second shaft sleeve can enable the second shaft sleeve to be clamped onto the second mounting plate through the elastic second shaft sleeve buckle, thereby forming axial limitation of the first and second shaft sleeves.
[0109] In some embodiments,
[0110] The first shaft sleeve 2 further comprises a first limiting rib 21, and the inner wall of the first shaft sleeve mounting hole 17 is further provided with a first shaft sleeve mounting hole groove 22, and the first limiting rib 21 can be clamped with the first shaft sleeve mounting hole groove 22, so as to limit the first shaft sleeve 2 in the circumferential direction.
[0111] The second shaft sleeve 3 further comprises a second limiting rib 24, and the inner wall of the second shaft sleeve mounting hole 18 is further provided with a second shaft sleeve mounting hole groove 25, and the second limiting rib 24 can be clamped with the second shaft sleeve mounting hole groove 25, so as to limit the second shaft sleeve 3 in the circumferential direction.
[0112] The utility model further optimizes through first limit rib strip that sets up on first shaft sleeve, can with first shaft sleeve mounting hole recess of first shaft sleeve mounting hole on cooperation joint, through second limit rib strip that sets up on second shaft sleeve, can with second shaft sleeve mounting hole recess of second shaft sleeve mounting hole on cooperation joint, thereby respectively form to first and second shaft sleeve axial limit, prevent its rotation, guarantee first and second shaft sleeve effectively be fixed to the both sides mounting panel of air outlet frame, guaranteed the stability of baffle structure installation.
[0113] Refer to Figures 3-5 The shaft sleeve is fixed on the air outlet frame by buckling, and the shaft sleeve has a limit rib strip, which cooperates with the groove on the air outlet frame to limit the rotation of the rotating shaft. If the rotating shaft rotates, it will cause the installation angle of the subsequent air deflector to be inconsistent, resulting in low installation efficiency.
[0114] Refer to Figures 4-5 This is an installation diagram of the shaft sleeve and the air outlet frame. Two elastic shaft sleeve buckles are arranged on the left and right sides of the shaft sleeve. After the shaft sleeve is inserted into the shaft sleeve mounting hole of the air outlet frame, the two shaft sleeve buckles can clamp the shaft sleeve to prevent it from coming out. A limit rib strip is arranged on the upper and lower sides of the shaft sleeve. The limit rib strip cooperates with the groove on the upper and lower sides of the shaft sleeve mounting hole to prevent the shaft sleeve from rotating.
[0115] In some embodiments,
[0116] The first shaft sleeve buckle 20 is a plurality of first shaft sleeve buckles 20 arranged along the circumferential direction of the first shaft sleeve 2. The first limit rib strip 21 is a plurality of first limit rib strips 21 arranged along the circumferential direction of the first shaft sleeve 2. The first shaft sleeve buckle 20 and the first limit rib strip 21 are also arranged along the circumferential direction of the first shaft sleeve 2.
[0117] The second shaft sleeve buckle 23 is a plurality of second shaft sleeve buckles 23 arranged along the circumferential direction of the second shaft sleeve 3. The second limit rib strip 24 is a plurality of second limit rib strips 24 arranged along the circumferential direction of the second shaft sleeve 3. The second shaft sleeve buckle 23 and the second limit rib strip 24 are also arranged along the circumferential direction of the second shaft sleeve 3.
[0118] The utility model discloses through a plurality of interval setting's first shaft sleeve buckle can improve the stability that first shaft sleeve is fixed to first mounting plate, through a plurality of interval setting's second shaft sleeve buckle can improve the stability that second shaft sleeve is fixed to second mounting plate, improve axial limit stability, through a plurality of interval setting's first limit rib strip can improve the circumferential limit stability that first shaft sleeve is fixed to first mounting plate, through a plurality of interval setting's second shaft sleeve buckle can improve the circumferential limit stability that second shaft sleeve is fixed to second mounting plate.
[0119] In some embodiments,
[0120] One said air deflector 1, one said first air deflector pivot 4, one said first shaft sleeve 2, one said second air deflector pivot 5 and one said second shaft sleeve 3 form a group of air deflection units, the air deflection units are multiple groups, and the multiple groups of air deflection units are connected as a whole;The air deflector assembly further comprises a motor 26 and an air deflection connecting rod 27, the air deflection connecting rod 27 connects the air deflector 1 in the multiple groups of air deflection units, and the motor 26 drives the first air deflector pivot 4 to rotate, and simultaneously drives the multiple air deflectors to rotate as a whole through the air deflection connecting rod 27.
[0121] The utility model discloses through the setting of air deflection connecting rod, can make multiple air deflectors connect as a whole, and through one drive motor can drive multiple air deflectors to make the movement of opening air outlet and closing air outlet, and the structure is simple and convenient.
[0122] The utility model discloses still provide a kind of air conditioner, it includes the air deflector assembly of preceding.
[0123] 1. The utility model discloses two buckles are arranged on the pivot of the left and right sides of air deflector, and the recesses matched with the buckle of air deflector pivot are formed on the shaft sleeve of the left and right sides of air outlet frame, preferably, the positions of recesses are perpendicular to each other in axial projection.
[0124] 2. The utility model provides a kind of air deflector fixing structure, which comprises air outlet frame, air deflector, shaft sleeve, stepper motor and air deflection connecting rod, etc., which are connected or fixed with each other by buckle or pivot, the pivot of stepper motor is connected with one side of driven air deflector to drive multiple air deflectors to rotate.
[0125] 3. The utility model discloses two recesses are arranged on the shaft sleeve mounting hole of air outlet frame, and limiting rib matched with the recess of shaft sleeve mounting hole is arranged on the shaft sleeve, two buckles are arranged on the shaft sleeve, and after being installed on the shaft sleeve mounting hole of air outlet frame, the buckles can be clamped on the upper surface of hole, so that the shaft sleeve cannot be taken out and cannot be rotated in axial direction, so that the shaft sleeves on the left and right sides of air outlet frame can form a unified angle after installation.
[0126] The utility model can effectively solve the following problems:
[0127] The utility model solves the problem of air deflector taking out due to dumping, falling and other reasons during product storage and transportation, thereby avoiding the problems of poor air deflection caused by air deflector taking out after sale, or air deflector falling into air duct causing blade damage, abnormal noise, blade jamming and other problems.
[0128] Beneficial effect: the utility model discloses air baffle left and right sides are installed through certain angle, and dismounting is convenient, need not increase other specific parts or parts to carry out auxiliary fixing, and the whole reliability is high.
[0129] The above is only the preferred embodiment of the utility model, and should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the technical principle of the utility model, can make some improvements and variations, and these improvements and variations should be regarded as the protection scope of the utility model.
Claims
1. An air guide plate assembly, characterized in that: include: The air guide plate (1), the first bushing (2), and the second bushing (3) are provided. One axial end of the air guide plate (1) is connected to a first air guide plate shaft (4), and the other axial end of the air guide plate (1) is connected to a second air guide plate shaft (5). The first air guide plate shaft (4) can be locked inside the first bushing (2), and the first air guide plate shaft (4) has a first installation position (100). At the first installation position (100), the first air guide plate shaft (4) can be locked into the first bushing (2). The second air guide shaft (5) can be inserted into or removed from the first bushing (2), and the second air guide shaft (5) can be locked in the second bushing (3). The second air guide shaft (5) has a second mounting position (200). At the second mounting position (200), the second air guide shaft (5) can be inserted into or removed from the second bushing (3), and the first mounting position (100) and the second mounting position (200) are not opposite in the axial direction of the air guide (1).
2. The air guide plate assembly according to claim 1, characterized in that: The air guide plate (1) can be elastically bent: when the air guide plate needs to be installed, the first air guide plate shaft (4) is rotated to the first installation position (100) and connected to the first bushing (2), and then the second air guide plate shaft (5) is rotated to the second installation position (200) and the air guide plate (1) is bent to connect the second air guide plate shaft (5) to the second bushing (3); When it is necessary to disassemble the air guide plate (1), the first air guide plate shaft (4) is rotated to the first installation position (100), and the air guide plate (1) is bent to disengage the first air guide plate shaft (4) from the first bushing (2), and then the second air guide plate shaft (5) is rotated to the second installation position (200) and disengaged from the second bushing (3).
3. The air guide plate assembly according to claim 1, characterized in that: A first buckle (6) is provided on the outer peripheral wall of the first air guide plate shaft (4) in a radially outward manner, and a first groove (7) is formed on the inner peripheral wall of the first bushing (2) in a radially outward manner. When the first buckle (6) and the first groove (7) are opposite to each other along the axial direction of the first air guide plate shaft (4), the first buckle (6) can be engaged in the first groove (7) or disengaged from the first groove (7). When the first buckle (6) is engaged in the first groove (7), it can axially limit the first air guide plate shaft (4) through the first bushing (2). A second buckle (8) is provided on the outer peripheral wall of the second air guide plate shaft (5) in a radially outward manner, and a second groove (9) is formed on the inner peripheral wall of the second bushing (3) in a radially outward manner. When the second buckle (8) and the second groove (9) are opposite to each other along the axial direction of the second air guide plate shaft (5), the second buckle (8) can be engaged in the second groove (9) or disengaged from the second groove (9). When the second buckle (8) is engaged in the second groove (9), the second bushing (3) forms an axial limit on the second air guide plate shaft (5). The air guide plate (1), the first air guide plate shaft (4) and the second air guide plate shaft (5) rotate as a whole. In the same state, the first buckle (6) and the second buckle (8) are not opposite each other in the axial direction, and / or the first slot (7) and the second slot (9) are not opposite each other in the axial direction.
4. The air guide plate assembly according to claim 3, characterized in that: Within the axial projection plane of the air guide plate (1), the first buckle (6) and the second buckle (8) are arranged at a 90° interval in the circumferential direction; and / or, within the axial projection plane of the air guide plate (1), the first slot (7) and the second slot (9) are arranged at a 90° interval in the circumferential direction.
5. The air guide plate assembly according to claim 3, characterized in that: The first bushing (2) has a first end plate (10), the first end plate (10) has a first shaft hole (11) penetrating its two axial ends, the inner wall of the first shaft hole (11) is recessed radially outward to form the first slot (7), the first air guide plate shaft (4) can be inserted into the first shaft hole (11) axially from one axial end face of the first end plate (10), so that the first buckle (6) is inserted into the first slot (7) axially from one axial end face of the first end plate (10) and moves to the other axial end face of the first end plate (10), and further by rotating the first air guide plate shaft (4), the first buckle (6) is locked on the other axial end face of the first end plate (10); The second bushing (3) has a second end plate (12), the second end plate (12) has a second shaft hole (13) that passes through its two axial ends, the inner wall of the second shaft hole (13) is recessed radially outward to form the second slot (9), the second air guide plate shaft (5) can be inserted into the second shaft hole (13) axially from one axial end face of the second end plate (12), so that the second buckle (8) is inserted into the second slot (9) axially from one axial end face of the second end plate (12) and moves to the other axial end face of the second end plate (12), and further by rotating the second air guide plate shaft (5), the second buckle (8) is locked on the other axial end face of the second end plate (12).
6. The air guide plate assembly according to claim 5, characterized in that: There are multiple first buckles (6), and multiple first buckles (6) are distributed circumferentially on the outer peripheral wall of the first air guide plate shaft (4). There are also multiple first slots (7), and multiple first slots (7) are distributed circumferentially on the inner peripheral wall of the first shaft hole (11). The first buckles (6) and the first slots (7) can be locked one by one. When the first buckle (6) is not opposite to the first slot (7), the first air guide plate shaft (4) cannot be installed on the first bushing (2) or cannot be removed from the first bushing (2). There are multiple second buckles (8), which are distributed circumferentially on the outer peripheral wall of the second air guide plate shaft (5). There are also multiple second slots (9), which are distributed circumferentially on the inner peripheral wall of the second shaft hole (13). The second buckles (8) and the second slots (9) can be locked in one-to-one. When the second buckle (8) is not opposite to the second slot (9), the second air guide plate shaft (5) cannot be installed on the second bushing (3) or cannot be removed from the second bushing (3). There is at least one first latch (6) and at least one second latch (8) that are not opposite each other in the axial direction of the air guide plate (1), and / or there is at least one first slot (7) and at least one second slot (9) that are not opposite each other in the axial direction of the air guide plate (1).
7. The air guide plate assembly according to claim 6, characterized in that: The plurality of first latches (6) and the plurality of second latches (8) are not opposite each other in the axial direction of the air guide plate (1); and / or, the plurality of first slots (7) and the plurality of second slots (9) are not opposite each other in the axial direction of the air guide plate (1).
8. The air guide plate assembly according to claim 7, characterized in that: The first buckle (6) consists of two buckles arranged on the first air guide plate shaft (4), and the two first buckles (6) are spaced 180° apart in the circumferential direction; the second buckle (8) consists of two buckles arranged on the second air guide plate shaft (5), and the two second buckles (8) are spaced 180° apart in the circumferential direction.
9. The air guide plate assembly according to claim 1, characterized in that: It also includes an air outlet frame (14), which has a first mounting plate (15) and a second mounting plate (16) arranged opposite to each other, forming an air outlet (19) between the first mounting plate (15) and the second mounting plate (16), and the air guide plate (1) is located in the air outlet (19). The first mounting plate (15) is provided with a first bushing mounting hole (17), and the first bushing (2) is provided in the first bushing mounting hole (17). The second mounting plate (16) is provided with a second bushing mounting hole (18), and the second bushing (3) is provided in the second bushing mounting hole (18). The first bushing (2) further includes a first bushing buckle (20), which is inserted into the first bushing mounting hole (17) from one axial side end face of the first mounting plate (15) and locked on the other axial side end face of the first mounting plate (15) to axially limit the first bushing (2); the second bushing (3) further includes a second bushing buckle (23), which is inserted into the second bushing mounting hole (18) from one axial side end face of the second mounting plate (16) and locked on the other axial side end face of the second mounting plate (16) to axially limit the second bushing (3).
10. The air guide plate assembly according to claim 9, characterized in that: The first bushing (2) also includes a first limiting rib (21); the inner wall of the first bushing mounting hole (17) is also provided with a first bushing mounting hole groove (22), and the first limiting rib (21) can be engaged with the first bushing mounting hole groove (22) to limit the first bushing (2) circumferentially; The second bushing (3) also includes a second limiting rib (24); the inner wall of the second bushing mounting hole (18) is also provided with a second bushing mounting hole groove (25), and the second limiting rib (24) can be engaged with the second bushing mounting hole groove (25) to limit the second bushing (3) circumferentially.
11. The air guide plate assembly according to claim 10, characterized in that: There are multiple first bushing buckles (20), and the multiple first bushing buckles (20) are spaced apart along the circumferential direction of the first bushing (2). There are multiple first limiting ribs (21), and the multiple first limiting ribs (21) are spaced apart along the circumferential direction of the first bushing (2). The first bushing buckles (20) and the first limiting ribs (21) are also spaced apart along the circumferential direction of the first bushing (2). There are multiple second bushing buckles (23), and the multiple second bushing buckles (23) are spaced apart along the circumferential direction of the second bushing (3). There are multiple second limiting ribs (24), and the multiple second limiting ribs (24) are spaced apart along the circumferential direction of the second bushing (3). The second bushing buckles (23) and the second limiting ribs (24) are also spaced apart along the circumferential direction of the second bushing (3).
12. The air guide plate assembly according to claim 1, characterized in that: A set of air guide units is composed of an air guide plate (1), a first air guide plate shaft (4), a first bushing (2), a second air guide plate shaft (5), and a second bushing (3). The air guide units are in multiple sets, and the multiple sets of air guide units are connected as one unit. The air guide plate assembly also includes a motor (26) and an air guide connecting rod (27). The air guide connecting rod (27) connects the air guide plates (1) in the multiple sets of air guide units. The motor (26) drives a first air guide plate shaft (4) to rotate, and at the same time drives multiple air guide plates to rotate as one unit through the air guide connecting rod (27).
13. An air conditioner, characterized in that: Includes the air guide plate assembly according to any one of claims 1-12.
Citation Information
Patent Citations
Air deflector assembly and air conditioner
CN213020240U
Wall-mounted air conditioner with novel air guide door assembly structure
CN218884111U
Air deflector assembly and air conditioner
CN219037034U